DxilMetadataHelper.cpp 71 KB

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  1. ///////////////////////////////////////////////////////////////////////////////
  2. // //
  3. // DxilMetadataHelper.cpp //
  4. // Copyright (C) Microsoft Corporation. All rights reserved. //
  5. // This file is distributed under the University of Illinois Open Source //
  6. // License. See LICENSE.TXT for details. //
  7. // //
  8. ///////////////////////////////////////////////////////////////////////////////
  9. #include "dxc/Support/Global.h"
  10. #include "dxc/HLSL/DxilMetadataHelper.h"
  11. #include "dxc/HLSL/DxilShaderModel.h"
  12. #include "dxc/HLSL/DxilCBuffer.h"
  13. #include "dxc/HLSL/DxilResource.h"
  14. #include "dxc/HLSL/DxilSampler.h"
  15. #include "dxc/HLSL/DxilSignatureElement.h"
  16. #include "dxc/HLSL/DxilSignature.h"
  17. #include "dxc/HLSL/DxilTypeSystem.h"
  18. #include "dxc/HLSL/DxilRootSignature.h"
  19. #include "dxc/HLSL/ComputeViewIdState.h"
  20. #include "dxc/HLSL/DxilFunctionProps.h"
  21. #include "llvm/IR/Constants.h"
  22. #include "llvm/IR/Function.h"
  23. #include "llvm/IR/LLVMContext.h"
  24. #include "llvm/IR/Metadata.h"
  25. #include "llvm/IR/Module.h"
  26. #include "llvm/Support/raw_ostream.h"
  27. #include <array>
  28. #include <algorithm>
  29. #include "dxc/Support/WinIncludes.h"
  30. using namespace llvm;
  31. using std::string;
  32. using std::vector;
  33. using std::unique_ptr;
  34. namespace hlsl {
  35. const char DxilMDHelper::kDxilVersionMDName[] = "dx.version";
  36. const char DxilMDHelper::kDxilShaderModelMDName[] = "dx.shaderModel";
  37. const char DxilMDHelper::kDxilEntryPointsMDName[] = "dx.entryPoints";
  38. const char DxilMDHelper::kDxilResourcesMDName[] = "dx.resources";
  39. const char DxilMDHelper::kDxilResourcesLinkInfoMDName[] = "dx.resources.link.info";
  40. const char DxilMDHelper::kDxilTypeSystemMDName[] = "dx.typeAnnotations";
  41. const char DxilMDHelper::kDxilTypeSystemHelperVariablePrefix[] = "dx.typevar.";
  42. const char DxilMDHelper::kDxilControlFlowHintMDName[] = "dx.controlflow.hints";
  43. const char DxilMDHelper::kDxilPreciseAttributeMDName[] = "dx.precise";
  44. const char DxilMDHelper::kHLDxilResourceAttributeMDName[] = "dx.hl.resource.attribute";
  45. const char DxilMDHelper::kDxilValidatorVersionMDName[] = "dx.valver";
  46. // This named metadata is not valid in final module (should be moved to DxilContainer)
  47. const char DxilMDHelper::kDxilRootSignatureMDName[] = "dx.rootSignature";
  48. const char DxilMDHelper::kDxilViewIdStateMDName[] = "dx.viewIdState";
  49. const char DxilMDHelper::kDxilFunctionPropertiesMDName[] = "dx.func.props";
  50. const char DxilMDHelper::kDxilEntrySignaturesMDName[] = "dx.func.signatures";
  51. static std::array<const char *, 7> DxilMDNames = {
  52. DxilMDHelper::kDxilVersionMDName,
  53. DxilMDHelper::kDxilShaderModelMDName,
  54. DxilMDHelper::kDxilEntryPointsMDName,
  55. DxilMDHelper::kDxilResourcesMDName,
  56. DxilMDHelper::kDxilTypeSystemMDName,
  57. DxilMDHelper::kDxilValidatorVersionMDName,
  58. DxilMDHelper::kDxilViewIdStateMDName,
  59. };
  60. DxilMDHelper::DxilMDHelper(Module *pModule, std::unique_ptr<ExtraPropertyHelper> EPH)
  61. : m_pModule(pModule)
  62. , m_Ctx(pModule->getContext())
  63. , m_pSM(nullptr)
  64. , m_ExtraPropertyHelper(std::move(EPH)) {
  65. }
  66. DxilMDHelper::~DxilMDHelper() {
  67. }
  68. void DxilMDHelper::SetShaderModel(const ShaderModel *pSM) {
  69. m_pSM = pSM;
  70. }
  71. const ShaderModel *DxilMDHelper::GetShaderModel() const {
  72. return m_pSM;
  73. }
  74. //
  75. // DXIL version.
  76. //
  77. void DxilMDHelper::EmitDxilVersion(unsigned Major, unsigned Minor) {
  78. NamedMDNode *pDxilVersionMD = m_pModule->getNamedMetadata(kDxilVersionMDName);
  79. IFTBOOL(pDxilVersionMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  80. pDxilVersionMD = m_pModule->getOrInsertNamedMetadata(kDxilVersionMDName);
  81. Metadata *MDVals[kDxilVersionNumFields];
  82. MDVals[kDxilVersionMajorIdx] = Uint32ToConstMD(Major);
  83. MDVals[kDxilVersionMinorIdx] = Uint32ToConstMD(Minor);
  84. pDxilVersionMD->addOperand(MDNode::get(m_Ctx, MDVals));
  85. }
  86. void DxilMDHelper::LoadDxilVersion(unsigned &Major, unsigned &Minor) {
  87. NamedMDNode *pDxilVersionMD = m_pModule->getNamedMetadata(kDxilVersionMDName);
  88. IFTBOOL(pDxilVersionMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  89. IFTBOOL(pDxilVersionMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  90. MDNode *pVersionMD = pDxilVersionMD->getOperand(0);
  91. IFTBOOL(pVersionMD->getNumOperands() == kDxilVersionNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  92. Major = ConstMDToUint32(pVersionMD->getOperand(kDxilVersionMajorIdx));
  93. Minor = ConstMDToUint32(pVersionMD->getOperand(kDxilVersionMinorIdx));
  94. }
  95. //
  96. // Validator version.
  97. //
  98. void DxilMDHelper::EmitValidatorVersion(unsigned Major, unsigned Minor) {
  99. NamedMDNode *pDxilValidatorVersionMD = m_pModule->getNamedMetadata(kDxilValidatorVersionMDName);
  100. // Allow re-writing the validator version, since this can be changed at later points.
  101. if (pDxilValidatorVersionMD)
  102. m_pModule->eraseNamedMetadata(pDxilValidatorVersionMD);
  103. pDxilValidatorVersionMD = m_pModule->getOrInsertNamedMetadata(kDxilValidatorVersionMDName);
  104. Metadata *MDVals[kDxilVersionNumFields];
  105. MDVals[kDxilVersionMajorIdx] = Uint32ToConstMD(Major);
  106. MDVals[kDxilVersionMinorIdx] = Uint32ToConstMD(Minor);
  107. pDxilValidatorVersionMD->addOperand(MDNode::get(m_Ctx, MDVals));
  108. }
  109. void DxilMDHelper::LoadValidatorVersion(unsigned &Major, unsigned &Minor) {
  110. NamedMDNode *pDxilValidatorVersionMD = m_pModule->getNamedMetadata(kDxilValidatorVersionMDName);
  111. if (pDxilValidatorVersionMD == nullptr) {
  112. // If no validator version metadata, assume 1.0
  113. Major = 1;
  114. Minor = 0;
  115. return;
  116. }
  117. IFTBOOL(pDxilValidatorVersionMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  118. MDNode *pVersionMD = pDxilValidatorVersionMD->getOperand(0);
  119. IFTBOOL(pVersionMD->getNumOperands() == kDxilVersionNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  120. Major = ConstMDToUint32(pVersionMD->getOperand(kDxilVersionMajorIdx));
  121. Minor = ConstMDToUint32(pVersionMD->getOperand(kDxilVersionMinorIdx));
  122. }
  123. //
  124. // DXIL shader model.
  125. //
  126. void DxilMDHelper::EmitDxilShaderModel(const ShaderModel *pSM) {
  127. NamedMDNode *pShaderModelNamedMD = m_pModule->getNamedMetadata(kDxilShaderModelMDName);
  128. IFTBOOL(pShaderModelNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  129. pShaderModelNamedMD = m_pModule->getOrInsertNamedMetadata(kDxilShaderModelMDName);
  130. Metadata *MDVals[kDxilShaderModelNumFields];
  131. MDVals[kDxilShaderModelTypeIdx ] = MDString::get(m_Ctx, pSM->GetKindName().c_str());
  132. MDVals[kDxilShaderModelMajorIdx] = Uint32ToConstMD(pSM->GetMajor());
  133. MDVals[kDxilShaderModelMinorIdx] = Uint32ToConstMD(pSM->GetMinor());
  134. pShaderModelNamedMD->addOperand(MDNode::get(m_Ctx, MDVals));
  135. }
  136. void DxilMDHelper::LoadDxilShaderModel(const ShaderModel *&pSM) {
  137. NamedMDNode *pShaderModelNamedMD = m_pModule->getNamedMetadata(kDxilShaderModelMDName);
  138. IFTBOOL(pShaderModelNamedMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  139. IFTBOOL(pShaderModelNamedMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  140. MDNode *pShaderModelMD = pShaderModelNamedMD->getOperand(0);
  141. IFTBOOL(pShaderModelMD->getNumOperands() == kDxilShaderModelNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  142. MDString *pShaderTypeMD = dyn_cast<MDString>(pShaderModelMD->getOperand(kDxilShaderModelTypeIdx));
  143. IFTBOOL(pShaderTypeMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  144. unsigned Major = ConstMDToUint32(pShaderModelMD->getOperand(kDxilShaderModelMajorIdx));
  145. unsigned Minor = ConstMDToUint32(pShaderModelMD->getOperand(kDxilShaderModelMinorIdx));
  146. string ShaderModelName = pShaderTypeMD->getString();
  147. ShaderModelName += "_" + std::to_string(Major) + "_" + std::to_string(Minor);
  148. pSM = ShaderModel::GetByName(ShaderModelName.c_str());
  149. if (!pSM->IsValidForDxil()) {
  150. char ErrorMsgTxt[40];
  151. StringCchPrintfA(ErrorMsgTxt, _countof(ErrorMsgTxt),
  152. "Unknown shader model '%s'", ShaderModelName.c_str());
  153. string ErrorMsg(ErrorMsgTxt);
  154. throw hlsl::Exception(DXC_E_INCORRECT_DXIL_METADATA, ErrorMsg);
  155. }
  156. }
  157. //
  158. // Entry points.
  159. //
  160. void DxilMDHelper::EmitDxilEntryPoints(vector<MDNode *> &MDEntries) {
  161. DXASSERT(MDEntries.size() == 1, "only one entry point is supported for now");
  162. NamedMDNode *pEntryPointsNamedMD = m_pModule->getNamedMetadata(kDxilEntryPointsMDName);
  163. IFTBOOL(pEntryPointsNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  164. pEntryPointsNamedMD = m_pModule->getOrInsertNamedMetadata(kDxilEntryPointsMDName);
  165. for (size_t i = 0; i < MDEntries.size(); i++) {
  166. pEntryPointsNamedMD->addOperand(MDEntries[i]);
  167. }
  168. }
  169. void DxilMDHelper::UpdateDxilEntryPoints(vector<MDNode *> &MDEntries) {
  170. DXASSERT(MDEntries.size() == 1, "only one entry point is supported for now");
  171. NamedMDNode *pEntryPointsNamedMD =
  172. m_pModule->getNamedMetadata(kDxilEntryPointsMDName);
  173. IFTBOOL(pEntryPointsNamedMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  174. for (size_t i = 0; i < MDEntries.size(); i++) {
  175. pEntryPointsNamedMD->setOperand(i, MDEntries[i]);
  176. }
  177. }
  178. const NamedMDNode *DxilMDHelper::GetDxilEntryPoints() {
  179. NamedMDNode *pEntryPointsNamedMD = m_pModule->getNamedMetadata(kDxilEntryPointsMDName);
  180. IFTBOOL(pEntryPointsNamedMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  181. return pEntryPointsNamedMD;
  182. }
  183. MDTuple *DxilMDHelper::EmitDxilEntryPointTuple(Function *pFunc, const string &Name,
  184. MDTuple *pSignatures, MDTuple *pResources,
  185. MDTuple *pProperties) {
  186. Metadata *MDVals[kDxilEntryPointNumFields];
  187. MDVals[kDxilEntryPointFunction ] = pFunc ? ValueAsMetadata::get(pFunc) : nullptr;
  188. MDVals[kDxilEntryPointName ] = MDString::get(m_Ctx, Name.c_str());
  189. MDVals[kDxilEntryPointSignatures] = pSignatures;
  190. MDVals[kDxilEntryPointResources ] = pResources;
  191. MDVals[kDxilEntryPointProperties] = pProperties;
  192. return MDNode::get(m_Ctx, MDVals);
  193. }
  194. void DxilMDHelper::GetDxilEntryPoint(const MDNode *MDO, Function *&pFunc, string &Name,
  195. const MDOperand *&pSignatures, const MDOperand *&pResources,
  196. const MDOperand *&pProperties) {
  197. IFTBOOL(MDO != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  198. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO);
  199. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  200. IFTBOOL(pTupleMD->getNumOperands() == kDxilEntryPointNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  201. // Retrieve entry function symbol.
  202. const MDOperand &MDOFunc = pTupleMD->getOperand(kDxilEntryPointFunction);
  203. if (MDOFunc.get() != nullptr) {
  204. ValueAsMetadata *pValueFunc = dyn_cast<ValueAsMetadata>(MDOFunc.get());
  205. IFTBOOL(pValueFunc != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  206. pFunc = dyn_cast<Function>(pValueFunc->getValue());
  207. IFTBOOL(pFunc != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  208. } else {
  209. pFunc = nullptr; // pass-through CP.
  210. }
  211. // Retrieve entry function name.
  212. const MDOperand &MDOName = pTupleMD->getOperand(kDxilEntryPointName);
  213. IFTBOOL(MDOName.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  214. MDString *pMDName = dyn_cast<MDString>(MDOName);
  215. IFTBOOL(pMDName != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  216. Name = pMDName->getString();
  217. pSignatures = &pTupleMD->getOperand(kDxilEntryPointSignatures);
  218. pResources = &pTupleMD->getOperand(kDxilEntryPointResources );
  219. pProperties = &pTupleMD->getOperand(kDxilEntryPointProperties);
  220. }
  221. //
  222. // Signatures.
  223. //
  224. MDTuple *DxilMDHelper::EmitDxilSignatures(const DxilEntrySignature &EntrySig) {
  225. MDTuple *pSignatureTupleMD = nullptr;
  226. const DxilSignature &InputSig = EntrySig.InputSignature;
  227. const DxilSignature &OutputSig = EntrySig.OutputSignature;
  228. const DxilSignature &PCSig = EntrySig.PatchConstantSignature;
  229. if (!InputSig.GetElements().empty() || !OutputSig.GetElements().empty() || !PCSig.GetElements().empty()) {
  230. Metadata *MDVals[kDxilNumSignatureFields];
  231. MDVals[kDxilInputSignature] = EmitSignatureMetadata(InputSig);
  232. MDVals[kDxilOutputSignature] = EmitSignatureMetadata(OutputSig);
  233. MDVals[kDxilPatchConstantSignature] = EmitSignatureMetadata(PCSig);
  234. pSignatureTupleMD = MDNode::get(m_Ctx, MDVals);
  235. }
  236. return pSignatureTupleMD;
  237. }
  238. void DxilMDHelper::EmitRootSignature(RootSignatureHandle &RootSig) {
  239. if (RootSig.IsEmpty()) {
  240. return;
  241. }
  242. RootSig.EnsureSerializedAvailable();
  243. Constant *V = llvm::ConstantDataArray::get(
  244. m_Ctx, llvm::ArrayRef<uint8_t>(RootSig.GetSerializedBytes(),
  245. RootSig.GetSerializedSize()));
  246. NamedMDNode *pRootSignatureNamedMD = m_pModule->getNamedMetadata(kDxilRootSignatureMDName);
  247. IFTBOOL(pRootSignatureNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  248. pRootSignatureNamedMD = m_pModule->getOrInsertNamedMetadata(kDxilRootSignatureMDName);
  249. pRootSignatureNamedMD->addOperand(MDNode::get(m_Ctx, {ConstantAsMetadata::get(V)}));
  250. return ;
  251. }
  252. void DxilMDHelper::LoadDxilSignatures(const MDOperand &MDO, DxilEntrySignature &EntrySig) {
  253. if (MDO.get() == nullptr)
  254. return;
  255. DxilSignature &InputSig = EntrySig.InputSignature;
  256. DxilSignature &OutputSig = EntrySig.OutputSignature;
  257. DxilSignature &PCSig = EntrySig.PatchConstantSignature;
  258. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  259. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  260. IFTBOOL(pTupleMD->getNumOperands() == kDxilNumSignatureFields, DXC_E_INCORRECT_DXIL_METADATA);
  261. LoadSignatureMetadata(pTupleMD->getOperand(kDxilInputSignature), InputSig);
  262. LoadSignatureMetadata(pTupleMD->getOperand(kDxilOutputSignature), OutputSig);
  263. LoadSignatureMetadata(pTupleMD->getOperand(kDxilPatchConstantSignature), PCSig);
  264. }
  265. MDTuple *DxilMDHelper::EmitSignatureMetadata(const DxilSignature &Sig) {
  266. auto &Elements = Sig.GetElements();
  267. if (Elements.empty())
  268. return nullptr;
  269. vector<Metadata *> MDVals;
  270. for (size_t i = 0; i < Elements.size(); i++) {
  271. MDVals.emplace_back(EmitSignatureElement(*Elements[i]));
  272. }
  273. return MDNode::get(m_Ctx, MDVals);
  274. }
  275. void DxilMDHelper::LoadSignatureMetadata(const MDOperand &MDO, DxilSignature &Sig) {
  276. if (MDO.get() == nullptr)
  277. return;
  278. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  279. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  280. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i++) {
  281. unique_ptr<DxilSignatureElement> pSE(Sig.CreateElement());
  282. LoadSignatureElement(pTupleMD->getOperand(i), *pSE.get());
  283. Sig.AppendElement(std::move(pSE));
  284. }
  285. }
  286. void DxilMDHelper::LoadRootSignature(RootSignatureHandle &Sig) {
  287. NamedMDNode *pRootSignatureNamedMD = m_pModule->getNamedMetadata(kDxilRootSignatureMDName);
  288. if(!pRootSignatureNamedMD)
  289. return;
  290. IFTBOOL(pRootSignatureNamedMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  291. MDNode *pNode = pRootSignatureNamedMD->getOperand(0);
  292. IFTBOOL(pNode->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  293. const MDOperand &MDO = pNode->getOperand(0);
  294. const ConstantAsMetadata *pMetaData = dyn_cast<ConstantAsMetadata>(MDO.get());
  295. IFTBOOL(pMetaData != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  296. const ConstantDataArray *pData =
  297. dyn_cast<ConstantDataArray>(pMetaData->getValue());
  298. IFTBOOL(pData != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  299. IFTBOOL(pData->getElementType() == Type::getInt8Ty(m_Ctx),
  300. DXC_E_INCORRECT_DXIL_METADATA);
  301. Sig.Clear();
  302. Sig.LoadSerialized((uint8_t *)pData->getRawDataValues().begin(),
  303. pData->getRawDataValues().size());
  304. }
  305. static const MDTuple *CastToTupleOrNull(const MDOperand &MDO) {
  306. if (MDO.get() == nullptr)
  307. return nullptr;
  308. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  309. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  310. return pTupleMD;
  311. }
  312. MDTuple *DxilMDHelper::EmitSignatureElement(const DxilSignatureElement &SE) {
  313. Metadata *MDVals[kDxilSignatureElementNumFields];
  314. MDVals[kDxilSignatureElementID ] = Uint32ToConstMD(SE.GetID());
  315. MDVals[kDxilSignatureElementName ] = MDString::get(m_Ctx, SE.GetName());
  316. MDVals[kDxilSignatureElementType ] = Uint8ToConstMD((uint8_t)SE.GetCompType().GetKind());
  317. MDVals[kDxilSignatureElementSystemValue ] = Uint8ToConstMD((uint8_t)SE.GetKind());
  318. MDVals[kDxilSignatureElementIndexVector ] = Uint32VectorToConstMDTuple(SE.GetSemanticIndexVec());
  319. MDVals[kDxilSignatureElementInterpMode ] = Uint8ToConstMD((uint8_t)SE.GetInterpolationMode()->GetKind());
  320. MDVals[kDxilSignatureElementRows ] = Uint32ToConstMD(SE.GetRows());
  321. MDVals[kDxilSignatureElementCols ] = Uint8ToConstMD((uint8_t)SE.GetCols());
  322. MDVals[kDxilSignatureElementStartRow ] = Int32ToConstMD(SE.GetStartRow());
  323. MDVals[kDxilSignatureElementStartCol ] = Int8ToConstMD((int8_t)SE.GetStartCol());
  324. // Name-value list of extended properties.
  325. MDVals[kDxilSignatureElementNameValueList] = nullptr;
  326. vector<Metadata *> MDExtraVals;
  327. m_ExtraPropertyHelper->EmitSignatureElementProperties(SE, MDExtraVals);
  328. if (!MDExtraVals.empty()) {
  329. MDVals[kDxilSignatureElementNameValueList] = MDNode::get(m_Ctx, MDExtraVals);
  330. }
  331. // NOTE: when extra properties for signature elements are needed, extend ExtraPropertyHelper.
  332. return MDNode::get(m_Ctx, MDVals);
  333. }
  334. void DxilMDHelper::LoadSignatureElement(const MDOperand &MDO, DxilSignatureElement &SE) {
  335. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  336. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  337. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  338. IFTBOOL(pTupleMD->getNumOperands() == kDxilSignatureElementNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  339. unsigned ID = ConstMDToUint32( pTupleMD->getOperand(kDxilSignatureElementID));
  340. MDString *pName = dyn_cast<MDString>( pTupleMD->getOperand(kDxilSignatureElementName));
  341. CompType CT = CompType(ConstMDToUint8( pTupleMD->getOperand(kDxilSignatureElementType)));
  342. DXIL::SemanticKind SemKind =
  343. (DXIL::SemanticKind)ConstMDToUint8( pTupleMD->getOperand(kDxilSignatureElementSystemValue));
  344. MDTuple *pSemanticIndexVectorMD = dyn_cast<MDTuple>(pTupleMD->getOperand(kDxilSignatureElementIndexVector));
  345. InterpolationMode IM(ConstMDToUint8( pTupleMD->getOperand(kDxilSignatureElementInterpMode)));
  346. unsigned NumRows = ConstMDToUint32( pTupleMD->getOperand(kDxilSignatureElementRows));
  347. uint8_t NumCols = ConstMDToUint8( pTupleMD->getOperand(kDxilSignatureElementCols));
  348. int32_t StartRow = ConstMDToInt32( pTupleMD->getOperand(kDxilSignatureElementStartRow));
  349. int8_t StartCol = ConstMDToInt8( pTupleMD->getOperand(kDxilSignatureElementStartCol));
  350. IFTBOOL(pName != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  351. IFTBOOL(pSemanticIndexVectorMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  352. vector<unsigned> SemanticIndexVector;
  353. ConstMDTupleToUint32Vector(pSemanticIndexVectorMD, SemanticIndexVector);
  354. SE.Initialize(pName->getString(), CT, IM, NumRows, NumCols, StartRow, StartCol, ID, SemanticIndexVector);
  355. SE.SetKind(SemKind);
  356. // Name-value list of extended properties.
  357. m_ExtraPropertyHelper->LoadSignatureElementProperties(pTupleMD->getOperand(kDxilSignatureElementNameValueList), SE);
  358. }
  359. //
  360. // Resources.
  361. //
  362. MDTuple *DxilMDHelper::EmitDxilResourceTuple(MDTuple *pSRVs, MDTuple *pUAVs,
  363. MDTuple *pCBuffers, MDTuple *pSamplers) {
  364. DXASSERT(pSRVs != nullptr || pUAVs != nullptr || pCBuffers != nullptr || pSamplers != nullptr, "resource tuple should not be emitted if there are no resources");
  365. Metadata *MDVals[kDxilNumResourceFields];
  366. MDVals[kDxilResourceSRVs ] = pSRVs;
  367. MDVals[kDxilResourceUAVs ] = pUAVs;
  368. MDVals[kDxilResourceCBuffers] = pCBuffers;
  369. MDVals[kDxilResourceSamplers] = pSamplers;
  370. MDTuple *pTupleMD = MDNode::get(m_Ctx, MDVals);
  371. return pTupleMD;
  372. }
  373. void DxilMDHelper::EmitDxilResources(llvm::MDTuple *pDxilResourceTuple) {
  374. NamedMDNode *pResourcesNamedMD = m_pModule->getNamedMetadata(kDxilResourcesMDName);
  375. IFTBOOL(pResourcesNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  376. pResourcesNamedMD = m_pModule->getOrInsertNamedMetadata(kDxilResourcesMDName);
  377. pResourcesNamedMD->addOperand(pDxilResourceTuple);
  378. }
  379. void DxilMDHelper::UpdateDxilResources(llvm::MDTuple *pDxilResourceTuple) {
  380. NamedMDNode *pResourcesNamedMD =
  381. m_pModule->getNamedMetadata(kDxilResourcesMDName);
  382. if (!pResourcesNamedMD) {
  383. pResourcesNamedMD =
  384. m_pModule->getOrInsertNamedMetadata(kDxilResourcesMDName);
  385. }
  386. if (pDxilResourceTuple) {
  387. if (pResourcesNamedMD->getNumOperands() != 0) {
  388. pResourcesNamedMD->setOperand(0, pDxilResourceTuple);
  389. }
  390. else {
  391. pResourcesNamedMD->addOperand(pDxilResourceTuple);
  392. }
  393. } else {
  394. m_pModule->eraseNamedMetadata(pResourcesNamedMD);
  395. }
  396. }
  397. void DxilMDHelper::EmitDxilResourceLinkInfoTuple(MDTuple *pSRVs, MDTuple *pUAVs,
  398. MDTuple *pCBuffers,
  399. MDTuple *pSamplers) {
  400. DXASSERT(pSRVs != nullptr || pUAVs != nullptr || pCBuffers != nullptr ||
  401. pSamplers != nullptr,
  402. "resource tuple should not be emitted if there are no resources");
  403. Metadata *MDVals[kDxilNumResourceFields];
  404. MDVals[kDxilResourceSRVs] = pSRVs;
  405. MDVals[kDxilResourceUAVs] = pUAVs;
  406. MDVals[kDxilResourceCBuffers] = pCBuffers;
  407. MDVals[kDxilResourceSamplers] = pSamplers;
  408. MDTuple *pTupleMD = MDNode::get(m_Ctx, MDVals);
  409. NamedMDNode *pResourcesNamedMD =
  410. m_pModule->getNamedMetadata(kDxilResourcesLinkInfoMDName);
  411. IFTBOOL(pResourcesNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  412. pResourcesNamedMD =
  413. m_pModule->getOrInsertNamedMetadata(kDxilResourcesLinkInfoMDName);
  414. pResourcesNamedMD->addOperand(pTupleMD);
  415. }
  416. void DxilMDHelper::LoadDxilResourceLinkInfoTuple(const llvm::MDTuple *&pSRVs,
  417. const llvm::MDTuple *&pUAVs,
  418. const llvm::MDTuple *&pCBuffers,
  419. const llvm::MDTuple *&pSamplers) {
  420. NamedMDNode *pResourcesNamedMD =
  421. m_pModule->getNamedMetadata(kDxilResourcesLinkInfoMDName);
  422. if (!pResourcesNamedMD) {
  423. pSRVs = pUAVs = pCBuffers = pSamplers = nullptr;
  424. return;
  425. }
  426. IFTBOOL(pResourcesNamedMD->getNumOperands() == 1,
  427. DXC_E_INCORRECT_DXIL_METADATA);
  428. const MDTuple *pTupleMD = dyn_cast<MDTuple>(pResourcesNamedMD->getOperand(0));
  429. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  430. IFTBOOL(pTupleMD->getNumOperands() == kDxilNumResourceFields,
  431. DXC_E_INCORRECT_DXIL_METADATA);
  432. pSRVs = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceSRVs));
  433. pUAVs = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceUAVs));
  434. pCBuffers = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceCBuffers));
  435. pSamplers = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceSamplers));
  436. }
  437. void DxilMDHelper::GetDxilResources(const MDOperand &MDO, const MDTuple *&pSRVs,
  438. const MDTuple *&pUAVs, const MDTuple *&pCBuffers,
  439. const MDTuple *&pSamplers) {
  440. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  441. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  442. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  443. IFTBOOL(pTupleMD->getNumOperands() == kDxilNumResourceFields, DXC_E_INCORRECT_DXIL_METADATA);
  444. pSRVs = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceSRVs ));
  445. pUAVs = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceUAVs ));
  446. pCBuffers = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceCBuffers));
  447. pSamplers = CastToTupleOrNull(pTupleMD->getOperand(kDxilResourceSamplers));
  448. }
  449. void DxilMDHelper::EmitDxilResourceBase(const DxilResourceBase &R, Metadata *ppMDVals[]) {
  450. ppMDVals[kDxilResourceBaseID ] = Uint32ToConstMD(R.GetID());
  451. ppMDVals[kDxilResourceBaseVariable ] = ValueAsMetadata::get(R.GetGlobalSymbol());
  452. ppMDVals[kDxilResourceBaseName ] = MDString::get(m_Ctx, R.GetGlobalName());
  453. ppMDVals[kDxilResourceBaseSpaceID ] = Uint32ToConstMD(R.GetSpaceID());
  454. ppMDVals[kDxilResourceBaseLowerBound] = Uint32ToConstMD(R.GetLowerBound());
  455. ppMDVals[kDxilResourceBaseRangeSize ] = Uint32ToConstMD(R.GetRangeSize());
  456. }
  457. void DxilMDHelper::LoadDxilResourceBase(const MDOperand &MDO, DxilResourceBase &R) {
  458. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  459. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  460. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  461. IFTBOOL(pTupleMD->getNumOperands() >= kDxilResourceBaseNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  462. R.SetID(ConstMDToUint32(pTupleMD->getOperand(kDxilResourceBaseID)));
  463. R.SetGlobalSymbol(dyn_cast<Constant>(ValueMDToValue(pTupleMD->getOperand(kDxilResourceBaseVariable))));
  464. R.SetGlobalName(StringMDToString(pTupleMD->getOperand(kDxilResourceBaseName)));
  465. R.SetSpaceID(ConstMDToUint32(pTupleMD->getOperand(kDxilResourceBaseSpaceID)));
  466. R.SetLowerBound(ConstMDToUint32(pTupleMD->getOperand(kDxilResourceBaseLowerBound)));
  467. R.SetRangeSize(ConstMDToUint32(pTupleMD->getOperand(kDxilResourceBaseRangeSize)));
  468. }
  469. MDTuple *DxilMDHelper::EmitDxilSRV(const DxilResource &SRV) {
  470. Metadata *MDVals[kDxilSRVNumFields];
  471. EmitDxilResourceBase(SRV, &MDVals[0]);
  472. // SRV-specific fields.
  473. MDVals[kDxilSRVShape ] = Uint32ToConstMD((unsigned)SRV.GetKind());
  474. MDVals[kDxilSRVSampleCount ] = Uint32ToConstMD(SRV.GetSampleCount());
  475. // Name-value list of extended properties.
  476. MDVals[kDxilSRVNameValueList] = nullptr;
  477. vector<Metadata *> MDExtraVals;
  478. m_ExtraPropertyHelper->EmitSRVProperties(SRV, MDExtraVals);
  479. if (!MDExtraVals.empty()) {
  480. MDVals[kDxilSRVNameValueList] = MDNode::get(m_Ctx, MDExtraVals);
  481. }
  482. return MDNode::get(m_Ctx, MDVals);
  483. }
  484. void DxilMDHelper::LoadDxilSRV(const MDOperand &MDO, DxilResource &SRV) {
  485. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  486. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  487. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  488. IFTBOOL(pTupleMD->getNumOperands() == kDxilSRVNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  489. SRV.SetRW(false);
  490. LoadDxilResourceBase(MDO, SRV);
  491. // SRV-specific fields.
  492. SRV.SetKind((DxilResource::Kind)ConstMDToUint32(pTupleMD->getOperand(kDxilSRVShape)));
  493. SRV.SetSampleCount(ConstMDToUint32(pTupleMD->getOperand(kDxilSRVSampleCount)));
  494. // Name-value list of extended properties.
  495. m_ExtraPropertyHelper->LoadSRVProperties(pTupleMD->getOperand(kDxilSRVNameValueList), SRV);
  496. }
  497. MDTuple *DxilMDHelper::EmitDxilUAV(const DxilResource &UAV) {
  498. Metadata *MDVals[kDxilUAVNumFields];
  499. EmitDxilResourceBase(UAV, &MDVals[0]);
  500. // UAV-specific fields.
  501. MDVals[kDxilUAVShape ] = Uint32ToConstMD((unsigned)UAV.GetKind());
  502. MDVals[kDxilUAVGloballyCoherent ] = BoolToConstMD(UAV.IsGloballyCoherent());
  503. MDVals[kDxilUAVCounter ] = BoolToConstMD(UAV.HasCounter());
  504. MDVals[kDxilUAVRasterizerOrderedView] = BoolToConstMD(UAV.IsROV());
  505. // Name-value list of extended properties.
  506. MDVals[kDxilUAVNameValueList ] = nullptr;
  507. vector<Metadata *> MDExtraVals;
  508. m_ExtraPropertyHelper->EmitUAVProperties(UAV, MDExtraVals);
  509. if (!MDExtraVals.empty()) {
  510. MDVals[kDxilUAVNameValueList] = MDNode::get(m_Ctx, MDExtraVals);
  511. }
  512. return MDNode::get(m_Ctx, MDVals);
  513. }
  514. void DxilMDHelper::LoadDxilUAV(const MDOperand &MDO, DxilResource &UAV) {
  515. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  516. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  517. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  518. IFTBOOL(pTupleMD->getNumOperands() == kDxilUAVNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  519. UAV.SetRW(true);
  520. LoadDxilResourceBase(MDO, UAV);
  521. // UAV-specific fields.
  522. UAV.SetKind((DxilResource::Kind)ConstMDToUint32(pTupleMD->getOperand(kDxilUAVShape)));
  523. UAV.SetGloballyCoherent(ConstMDToBool(pTupleMD->getOperand(kDxilUAVGloballyCoherent)));
  524. UAV.SetHasCounter(ConstMDToBool(pTupleMD->getOperand(kDxilUAVCounter)));
  525. UAV.SetROV(ConstMDToBool(pTupleMD->getOperand(kDxilUAVRasterizerOrderedView)));
  526. // Name-value list of extended properties.
  527. m_ExtraPropertyHelper->LoadUAVProperties(pTupleMD->getOperand(kDxilUAVNameValueList), UAV);
  528. }
  529. MDTuple *DxilMDHelper::EmitDxilCBuffer(const DxilCBuffer &CB) {
  530. Metadata *MDVals[kDxilCBufferNumFields];
  531. EmitDxilResourceBase(CB, &MDVals[0]);
  532. // CBuffer-specific fields.
  533. // CBuffer size in bytes.
  534. MDVals[kDxilCBufferSizeInBytes ] = Uint32ToConstMD(CB.GetSize());
  535. // Name-value list of extended properties.
  536. MDVals[kDxilCBufferNameValueList] = nullptr;
  537. vector<Metadata *> MDExtraVals;
  538. m_ExtraPropertyHelper->EmitCBufferProperties(CB, MDExtraVals);
  539. if (!MDExtraVals.empty()) {
  540. MDVals[kDxilCBufferNameValueList] = MDNode::get(m_Ctx, MDExtraVals);
  541. }
  542. return MDNode::get(m_Ctx, MDVals);
  543. }
  544. void DxilMDHelper::LoadDxilCBuffer(const MDOperand &MDO, DxilCBuffer &CB) {
  545. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  546. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  547. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  548. IFTBOOL(pTupleMD->getNumOperands() == kDxilCBufferNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  549. LoadDxilResourceBase(MDO, CB);
  550. // CBuffer-specific fields.
  551. CB.SetSize(ConstMDToUint32(pTupleMD->getOperand(kDxilCBufferSizeInBytes)));
  552. // Name-value list of extended properties.
  553. m_ExtraPropertyHelper->LoadCBufferProperties(pTupleMD->getOperand(kDxilCBufferNameValueList), CB);
  554. }
  555. void DxilMDHelper::EmitDxilTypeSystem(DxilTypeSystem &TypeSystem, vector<GlobalVariable*> &LLVMUsed) {
  556. auto &TypeMap = TypeSystem.GetStructAnnotationMap();
  557. vector<Metadata *> MDVals;
  558. MDVals.emplace_back(Uint32ToConstMD(kDxilTypeSystemStructTag)); // Tag
  559. unsigned GVIdx = 0;
  560. for (auto it = TypeMap.begin(); it != TypeMap.end(); ++it, GVIdx++) {
  561. StructType *pStructType = const_cast<StructType *>(it->first);
  562. DxilStructAnnotation *pA = it->second.get();
  563. // Emit struct type field annotations.
  564. Metadata *pMD = EmitDxilStructAnnotation(*pA);
  565. MDVals.push_back(ValueAsMetadata::get(UndefValue::get(pStructType)));
  566. MDVals.push_back(pMD);
  567. }
  568. auto &FuncMap = TypeSystem.GetFunctionAnnotationMap();
  569. vector<Metadata *> MDFuncVals;
  570. unsigned major, minor;
  571. LoadDxilVersion(major, minor);
  572. if (major == 1 && minor <= 1) {
  573. MDFuncVals.emplace_back(Uint32ToConstMD(kDxilTypeSystemFunctionTag)); // Tag
  574. }
  575. else {
  576. DXASSERT(major == 1 && minor >= 2, "Invalid DXIL Version.");
  577. MDFuncVals.emplace_back(Uint32ToConstMD(kDxilTypeSystemFunction2Tag));
  578. }
  579. for (auto it = FuncMap.begin(); it != FuncMap.end(); ++it) {
  580. DxilFunctionAnnotation *pA = it->second.get();
  581. MDFuncVals.push_back(ValueAsMetadata::get(const_cast<Function*>(pA->GetFunction())));
  582. // Emit function annotations.
  583. Metadata *pMD;
  584. if (major == 1 && minor <= 1) {
  585. pMD = EmitDxilFunctionAnnotation(*pA);
  586. }
  587. else {
  588. pMD = EmitDxilFunctionAnnotation2(*pA);
  589. }
  590. MDFuncVals.push_back(pMD);
  591. }
  592. if (MDVals.size() > 1) {
  593. NamedMDNode *pDxilTypeAnnotationsMD = m_pModule->getNamedMetadata(kDxilTypeSystemMDName);
  594. IFTBOOL(pDxilTypeAnnotationsMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  595. pDxilTypeAnnotationsMD = m_pModule->getOrInsertNamedMetadata(kDxilTypeSystemMDName);
  596. pDxilTypeAnnotationsMD->addOperand(MDNode::get(m_Ctx, MDVals));
  597. }
  598. if (MDFuncVals.size() > 1) {
  599. NamedMDNode *pDxilTypeAnnotationsMD = m_pModule->getNamedMetadata(kDxilTypeSystemMDName);
  600. if (pDxilTypeAnnotationsMD == nullptr)
  601. pDxilTypeAnnotationsMD = m_pModule->getOrInsertNamedMetadata(kDxilTypeSystemMDName);
  602. pDxilTypeAnnotationsMD->addOperand(MDNode::get(m_Ctx, MDFuncVals));
  603. }
  604. }
  605. void DxilMDHelper::LoadDxilTypeSystemNode(const llvm::MDTuple &MDT,
  606. DxilTypeSystem &TypeSystem) {
  607. unsigned Tag = ConstMDToUint32(MDT.getOperand(0));
  608. if (Tag == kDxilTypeSystemStructTag) {
  609. IFTBOOL((MDT.getNumOperands() & 0x1) == 1, DXC_E_INCORRECT_DXIL_METADATA);
  610. for (unsigned i = 1; i < MDT.getNumOperands(); i += 2) {
  611. Constant *pGV =
  612. dyn_cast<Constant>(ValueMDToValue(MDT.getOperand(i)));
  613. IFTBOOL(pGV != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  614. StructType *pGVType =
  615. dyn_cast<StructType>(pGV->getType());
  616. IFTBOOL(pGVType != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  617. DxilStructAnnotation *pSA = TypeSystem.AddStructAnnotation(pGVType);
  618. LoadDxilStructAnnotation(MDT.getOperand(i + 1), *pSA);
  619. }
  620. } else if (Tag == kDxilTypeSystemFunctionTag) {
  621. IFTBOOL((MDT.getNumOperands() & 0x1) == 1, DXC_E_INCORRECT_DXIL_METADATA);
  622. for (unsigned i = 1; i < MDT.getNumOperands(); i += 2) {
  623. Function *F = dyn_cast<Function>(ValueMDToValue(MDT.getOperand(i)));
  624. DxilFunctionAnnotation *pFA = TypeSystem.AddFunctionAnnotation(F);
  625. LoadDxilFunctionAnnotation(MDT.getOperand(i + 1), *pFA);
  626. }
  627. } else {
  628. IFTBOOL(Tag == kDxilTypeSystemFunction2Tag, DXC_E_INCORRECT_DXIL_METADATA);
  629. for (unsigned i = 1; i < MDT.getNumOperands(); i += 2) {
  630. Function *F = dyn_cast<Function>(ValueMDToValue(MDT.getOperand(i)));
  631. DxilFunctionAnnotation *pFA = TypeSystem.AddFunctionAnnotation(F);
  632. LoadDxilFunctionAnnotation2(MDT.getOperand(i + 1), *pFA);
  633. }
  634. }
  635. }
  636. void DxilMDHelper::LoadDxilTypeSystem(DxilTypeSystem &TypeSystem) {
  637. NamedMDNode *pDxilTypeAnnotationsMD = m_pModule->getNamedMetadata(kDxilTypeSystemMDName);
  638. if (pDxilTypeAnnotationsMD == nullptr)
  639. return;
  640. IFTBOOL(pDxilTypeAnnotationsMD->getNumOperands() <= 2, DXC_E_INCORRECT_DXIL_METADATA);
  641. for (unsigned i = 0; i < pDxilTypeAnnotationsMD->getNumOperands(); i++) {
  642. const MDTuple *pTupleMD = dyn_cast<MDTuple>(pDxilTypeAnnotationsMD->getOperand(i));
  643. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  644. LoadDxilTypeSystemNode(*pTupleMD, TypeSystem);
  645. }
  646. }
  647. Metadata *DxilMDHelper::EmitDxilStructAnnotation(const DxilStructAnnotation &SA) {
  648. vector<Metadata *> MDVals(SA.GetNumFields() + 1);
  649. MDVals[0] = Uint32ToConstMD(SA.GetCBufferSize());
  650. for (unsigned i = 0; i < SA.GetNumFields(); i++) {
  651. MDVals[i+1] = EmitDxilFieldAnnotation(SA.GetFieldAnnotation(i));
  652. }
  653. return MDNode::get(m_Ctx, MDVals);
  654. }
  655. void DxilMDHelper::LoadDxilStructAnnotation(const MDOperand &MDO, DxilStructAnnotation &SA) {
  656. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  657. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  658. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  659. if (pTupleMD->getNumOperands() == 1) {
  660. const StructType *ST = SA.GetStructType();
  661. if (ST->getNumElements() == 1) {
  662. Type *EltTy = ST->getElementType(0);
  663. if (EltTy == Type::getInt8Ty(ST->getContext())) {
  664. SA.MarkEmptyStruct();
  665. }
  666. }
  667. }
  668. IFTBOOL(pTupleMD->getNumOperands() == SA.GetNumFields()+1, DXC_E_INCORRECT_DXIL_METADATA);
  669. SA.SetCBufferSize(ConstMDToUint32(pTupleMD->getOperand(0)));
  670. for (unsigned i = 0; i < SA.GetNumFields(); i++) {
  671. const MDOperand &MDO = pTupleMD->getOperand(i+1);
  672. DxilFieldAnnotation &FA = SA.GetFieldAnnotation(i);
  673. LoadDxilFieldAnnotation(MDO, FA);
  674. }
  675. }
  676. // For <= 1.1: Function Annotation is a tuple of Parameter Annotataions, starting with the return type.
  677. Metadata *
  678. DxilMDHelper::EmitDxilFunctionAnnotation(const DxilFunctionAnnotation &FA) {
  679. return EmitDxilParamAnnotations(FA);
  680. }
  681. void DxilMDHelper::LoadDxilFunctionAnnotation(const MDOperand &MDO,
  682. DxilFunctionAnnotation &FA) {
  683. LoadDxilParamAnnotations(MDO, FA);
  684. }
  685. // For >= 1.2: Function Annotation is a tuple of 1) FunctionFPFlag and 2) Parameter Annotations
  686. llvm::Metadata *DxilMDHelper::EmitDxilFunctionAnnotation2(const DxilFunctionAnnotation &FA) {
  687. vector<Metadata *> MDVals(2);
  688. MDVals[0] = EmitDxilFunctionFPFlag(FA.GetFlag());
  689. MDVals[1] = EmitDxilParamAnnotations(FA);
  690. return MDNode::get(m_Ctx, MDVals);
  691. }
  692. void DxilMDHelper::LoadDxilFunctionAnnotation2(const llvm::MDOperand &MDO, DxilFunctionAnnotation &FA) {
  693. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  694. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  695. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  696. IFTBOOL(pTupleMD->getNumOperands() == 2, DXC_E_INCORRECT_DXIL_METADATA);
  697. LoadDxilFunctionFPFlag(pTupleMD->getOperand(0), FA);
  698. LoadDxilParamAnnotations(pTupleMD->getOperand(1), FA);
  699. }
  700. llvm::Metadata *
  701. DxilMDHelper::EmitDxilParamAnnotations(const DxilFunctionAnnotation &FA) {
  702. vector<Metadata *> MDParamAnnotations(FA.GetNumParameters() + 1);
  703. MDParamAnnotations[0] = EmitDxilParamAnnotation(FA.GetRetTypeAnnotation());
  704. for (unsigned i = 0; i < FA.GetNumParameters(); i++) {
  705. MDParamAnnotations[i + 1] =
  706. EmitDxilParamAnnotation(FA.GetParameterAnnotation(i));
  707. }
  708. return MDNode::get(m_Ctx, MDParamAnnotations);
  709. }
  710. void DxilMDHelper::LoadDxilParamAnnotations(const llvm::MDOperand &MDO,
  711. DxilFunctionAnnotation &FA) {
  712. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  713. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  714. IFTBOOL(pTupleMD->getNumOperands() == FA.GetNumParameters() + 1,
  715. DXC_E_INCORRECT_DXIL_METADATA);
  716. DxilParameterAnnotation &retTyAnnotation = FA.GetRetTypeAnnotation();
  717. LoadDxilParamAnnotation(pTupleMD->getOperand(0), retTyAnnotation);
  718. for (unsigned i = 0; i < FA.GetNumParameters(); i++) {
  719. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  720. DxilParameterAnnotation &PA = FA.GetParameterAnnotation(i);
  721. LoadDxilParamAnnotation(MDO, PA);
  722. }
  723. }
  724. Metadata *DxilMDHelper::EmitDxilFunctionFPFlag(const DxilFunctionFPFlag &flag) {
  725. return MDNode::get(m_Ctx, Int32ToConstMD(flag.GetFlagValue()));
  726. }
  727. void DxilMDHelper::LoadDxilFunctionFPFlag(const llvm::MDOperand &MDO,
  728. DxilFunctionAnnotation &FA) {
  729. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  730. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  731. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  732. IFTBOOL(pTupleMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  733. FA.GetFlag().SetFlagValue(ConstMDToUint32(pTupleMD->getOperand(0)));
  734. }
  735. Metadata *
  736. DxilMDHelper::EmitDxilParamAnnotation(const DxilParameterAnnotation &PA) {
  737. vector<Metadata *> MDVals(3);
  738. MDVals[0] = Uint32ToConstMD(static_cast<unsigned>(PA.GetParamInputQual()));
  739. MDVals[1] = EmitDxilFieldAnnotation(PA);
  740. MDVals[2] = Uint32VectorToConstMDTuple(PA.GetSemanticIndexVec());
  741. return MDNode::get(m_Ctx, MDVals);
  742. }
  743. void DxilMDHelper::LoadDxilParamAnnotation(const MDOperand &MDO,
  744. DxilParameterAnnotation &PA) {
  745. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  746. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  747. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  748. IFTBOOL(pTupleMD->getNumOperands() == 3, DXC_E_INCORRECT_DXIL_METADATA);
  749. PA.SetParamInputQual(static_cast<DxilParamInputQual>(
  750. ConstMDToUint32(pTupleMD->getOperand(0))));
  751. LoadDxilFieldAnnotation(pTupleMD->getOperand(1), PA);
  752. MDTuple *pSemanticIndexVectorMD = dyn_cast<MDTuple>(pTupleMD->getOperand(2));
  753. vector<unsigned> SemanticIndexVector;
  754. ConstMDTupleToUint32Vector(pSemanticIndexVectorMD, SemanticIndexVector);
  755. PA.SetSemanticIndexVec(SemanticIndexVector);
  756. }
  757. Metadata *DxilMDHelper::EmitDxilFieldAnnotation(const DxilFieldAnnotation &FA) {
  758. vector<Metadata *> MDVals; // Tag-Value list.
  759. if (FA.HasFieldName()) {
  760. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationFieldNameTag));
  761. MDVals.emplace_back(MDString::get(m_Ctx, FA.GetFieldName()));
  762. }
  763. if (FA.IsPrecise()) {
  764. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationPreciseTag)); // Tag
  765. MDVals.emplace_back(BoolToConstMD(true)); // Value
  766. }
  767. if (FA.HasMatrixAnnotation()) {
  768. const DxilMatrixAnnotation &MA = FA.GetMatrixAnnotation();
  769. Metadata *MatrixMD[3];
  770. MatrixMD[0] = Uint32ToConstMD(MA.Rows);
  771. MatrixMD[1] = Uint32ToConstMD(MA.Cols);
  772. MatrixMD[2] = Uint32ToConstMD((unsigned)MA.Orientation);
  773. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationMatrixTag));
  774. MDVals.emplace_back(MDNode::get(m_Ctx, MatrixMD));
  775. }
  776. if (FA.HasCBufferOffset()) {
  777. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationCBufferOffsetTag));
  778. MDVals.emplace_back(Uint32ToConstMD(FA.GetCBufferOffset()));
  779. }
  780. if (FA.HasSemanticString()) {
  781. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationSemanticStringTag));
  782. MDVals.emplace_back(MDString::get(m_Ctx, FA.GetSemanticString()));
  783. }
  784. if (FA.HasInterpolationMode()) {
  785. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationInterpolationModeTag));
  786. MDVals.emplace_back(Uint32ToConstMD((unsigned)FA.GetInterpolationMode().GetKind()));
  787. }
  788. if (FA.HasCompType()) {
  789. MDVals.emplace_back(Uint32ToConstMD(kDxilFieldAnnotationCompTypeTag));
  790. MDVals.emplace_back(Uint32ToConstMD((unsigned)FA.GetCompType().GetKind()));
  791. }
  792. return MDNode::get(m_Ctx, MDVals);
  793. }
  794. void DxilMDHelper::LoadDxilFieldAnnotation(const MDOperand &MDO, DxilFieldAnnotation &FA) {
  795. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  796. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  797. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  798. IFTBOOL((pTupleMD->getNumOperands() & 0x1) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  799. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i += 2) {
  800. unsigned Tag = ConstMDToUint32(pTupleMD->getOperand(i));
  801. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  802. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  803. switch (Tag) {
  804. case kDxilFieldAnnotationPreciseTag:
  805. FA.SetPrecise(ConstMDToBool(MDO));
  806. break;
  807. case kDxilFieldAnnotationMatrixTag: {
  808. DxilMatrixAnnotation MA;
  809. const MDTuple *pMATupleMD = dyn_cast<MDTuple>(MDO.get());
  810. IFTBOOL(pMATupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  811. IFTBOOL(pMATupleMD->getNumOperands() == 3, DXC_E_INCORRECT_DXIL_METADATA);
  812. MA.Rows = ConstMDToUint32(pMATupleMD->getOperand(0));
  813. MA.Cols = ConstMDToUint32(pMATupleMD->getOperand(1));
  814. MA.Orientation = (MatrixOrientation)ConstMDToUint32(pMATupleMD->getOperand(2));
  815. FA.SetMatrixAnnotation(MA);
  816. } break;
  817. case kDxilFieldAnnotationCBufferOffsetTag:
  818. FA.SetCBufferOffset(ConstMDToUint32(MDO));
  819. break;
  820. case kDxilFieldAnnotationSemanticStringTag:
  821. FA.SetSemanticString(StringMDToString(MDO));
  822. break;
  823. case kDxilFieldAnnotationInterpolationModeTag:
  824. FA.SetInterpolationMode(InterpolationMode((InterpolationMode::Kind)ConstMDToUint32(MDO)));
  825. break;
  826. case kDxilFieldAnnotationFieldNameTag:
  827. FA.SetFieldName(StringMDToString(MDO));
  828. break;
  829. case kDxilFieldAnnotationCompTypeTag:
  830. FA.SetCompType((CompType::Kind)ConstMDToUint32(MDO));
  831. break;
  832. default:
  833. // TODO: I don't think we should be failing unrecognized extended tags.
  834. // Perhaps we can flag this case in the module and fail validation
  835. // if flagged.
  836. // That way, an existing loader will not fail on an additional tag
  837. // and the blob would not be signed if the extra tag was not legal.
  838. IFTBOOL(false, DXC_E_INCORRECT_DXIL_METADATA);
  839. }
  840. }
  841. }
  842. Function *DxilMDHelper::LoadDxilFunctionProps(MDTuple *pProps,
  843. hlsl::DxilFunctionProps *props) {
  844. unsigned idx = 0;
  845. Function *F = dyn_cast<Function>(
  846. dyn_cast<ValueAsMetadata>(pProps->getOperand(idx++))->getValue());
  847. DXIL::ShaderKind shaderKind =
  848. static_cast<DXIL::ShaderKind>(ConstMDToUint32(pProps->getOperand(idx++)));
  849. props->shaderKind = shaderKind;
  850. switch (shaderKind) {
  851. case DXIL::ShaderKind::Compute:
  852. props->ShaderProps.CS.numThreads[0] =
  853. ConstMDToUint32(pProps->getOperand(idx++));
  854. props->ShaderProps.CS.numThreads[1] =
  855. ConstMDToUint32(pProps->getOperand(idx++));
  856. props->ShaderProps.CS.numThreads[2] =
  857. ConstMDToUint32(pProps->getOperand(idx++));
  858. break;
  859. case DXIL::ShaderKind::Geometry:
  860. props->ShaderProps.GS.inputPrimitive =
  861. (DXIL::InputPrimitive)ConstMDToUint32(pProps->getOperand(idx++));
  862. props->ShaderProps.GS.maxVertexCount =
  863. ConstMDToUint32(pProps->getOperand(idx++));
  864. props->ShaderProps.GS.instanceCount =
  865. ConstMDToUint32(pProps->getOperand(idx++));
  866. for (size_t i = 0;
  867. i < _countof(props->ShaderProps.GS.streamPrimitiveTopologies); ++i)
  868. props->ShaderProps.GS.streamPrimitiveTopologies[i] =
  869. (DXIL::PrimitiveTopology)ConstMDToUint32(pProps->getOperand(idx++));
  870. break;
  871. case DXIL::ShaderKind::Hull:
  872. props->ShaderProps.HS.patchConstantFunc = dyn_cast<Function>(
  873. dyn_cast<ValueAsMetadata>(pProps->getOperand(idx++))->getValue());
  874. props->ShaderProps.HS.domain =
  875. (DXIL::TessellatorDomain)ConstMDToUint32(pProps->getOperand(idx++));
  876. props->ShaderProps.HS.partition =
  877. (DXIL::TessellatorPartitioning)ConstMDToUint32(
  878. pProps->getOperand(idx++));
  879. props->ShaderProps.HS.outputPrimitive =
  880. (DXIL::TessellatorOutputPrimitive)ConstMDToUint32(
  881. pProps->getOperand(idx++));
  882. props->ShaderProps.HS.inputControlPoints =
  883. ConstMDToUint32(pProps->getOperand(idx++));
  884. props->ShaderProps.HS.outputControlPoints =
  885. ConstMDToUint32(pProps->getOperand(idx++));
  886. props->ShaderProps.HS.maxTessFactor =
  887. ConstMDToFloat(pProps->getOperand(idx++));
  888. break;
  889. case DXIL::ShaderKind::Domain:
  890. props->ShaderProps.DS.domain =
  891. (DXIL::TessellatorDomain)ConstMDToUint32(pProps->getOperand(idx++));
  892. props->ShaderProps.DS.inputControlPoints =
  893. ConstMDToUint32(pProps->getOperand(idx++));
  894. break;
  895. case DXIL::ShaderKind::Pixel:
  896. props->ShaderProps.PS.EarlyDepthStencil =
  897. ConstMDToUint32(pProps->getOperand(idx++));
  898. break;
  899. default:
  900. break;
  901. }
  902. return F;
  903. }
  904. MDTuple *
  905. DxilMDHelper::EmitDxilFunctionProps(const hlsl::DxilFunctionProps *props,
  906. Function *F) {
  907. Metadata *MDVals[30];
  908. std::fill(MDVals, MDVals + _countof(MDVals), nullptr);
  909. unsigned valIdx = 0;
  910. MDVals[valIdx++] = ValueAsMetadata::get(F);
  911. MDVals[valIdx++] = Uint32ToConstMD(static_cast<unsigned>(props->shaderKind));
  912. switch (props->shaderKind) {
  913. case DXIL::ShaderKind::Compute:
  914. MDVals[valIdx++] = Uint32ToConstMD(props->ShaderProps.CS.numThreads[0]);
  915. MDVals[valIdx++] = Uint32ToConstMD(props->ShaderProps.CS.numThreads[1]);
  916. MDVals[valIdx++] = Uint32ToConstMD(props->ShaderProps.CS.numThreads[2]);
  917. break;
  918. case DXIL::ShaderKind::Geometry:
  919. MDVals[valIdx++] =
  920. Uint8ToConstMD((uint8_t)props->ShaderProps.GS.inputPrimitive);
  921. MDVals[valIdx++] = Uint32ToConstMD(props->ShaderProps.GS.maxVertexCount);
  922. MDVals[valIdx++] = Uint32ToConstMD(props->ShaderProps.GS.instanceCount);
  923. for (size_t i = 0;
  924. i < _countof(props->ShaderProps.GS.streamPrimitiveTopologies); ++i)
  925. MDVals[valIdx++] = Uint8ToConstMD(
  926. (uint8_t)props->ShaderProps.GS.streamPrimitiveTopologies[i]);
  927. break;
  928. case DXIL::ShaderKind::Hull:
  929. MDVals[valIdx++] =
  930. ValueAsMetadata::get(props->ShaderProps.HS.patchConstantFunc);
  931. MDVals[valIdx++] = Uint8ToConstMD((uint8_t)props->ShaderProps.HS.domain);
  932. MDVals[valIdx++] = Uint8ToConstMD((uint8_t)props->ShaderProps.HS.partition);
  933. MDVals[valIdx++] =
  934. Uint8ToConstMD((uint8_t)props->ShaderProps.HS.outputPrimitive);
  935. MDVals[valIdx++] =
  936. Uint32ToConstMD(props->ShaderProps.HS.inputControlPoints);
  937. MDVals[valIdx++] =
  938. Uint32ToConstMD(props->ShaderProps.HS.outputControlPoints);
  939. MDVals[valIdx++] = FloatToConstMD(props->ShaderProps.HS.maxTessFactor);
  940. break;
  941. case DXIL::ShaderKind::Domain:
  942. MDVals[valIdx++] = Uint8ToConstMD((uint8_t)props->ShaderProps.DS.domain);
  943. MDVals[valIdx++] =
  944. Uint32ToConstMD(props->ShaderProps.DS.inputControlPoints);
  945. break;
  946. case DXIL::ShaderKind::Pixel:
  947. MDVals[valIdx++] = BoolToConstMD(props->ShaderProps.PS.EarlyDepthStencil);
  948. break;
  949. default:
  950. break;
  951. }
  952. return MDTuple::get(m_Ctx, ArrayRef<llvm::Metadata *>(MDVals, valIdx));
  953. }
  954. void DxilMDHelper::EmitDxilViewIdState(DxilViewIdState &ViewIdState) {
  955. const vector<unsigned> &Data = ViewIdState.GetSerialized();
  956. // If all UINTs are zero, do not emit ViewIdState.
  957. if (!std::any_of(Data.begin(), Data.end(), [](unsigned e){return e!=0;}))
  958. return;
  959. Constant *V = ConstantDataArray::get(m_Ctx, ArrayRef<uint32_t>(Data));
  960. NamedMDNode *pViewIdNamedMD = m_pModule->getNamedMetadata(kDxilViewIdStateMDName);
  961. IFTBOOL(pViewIdNamedMD == nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  962. pViewIdNamedMD = m_pModule->getOrInsertNamedMetadata(kDxilViewIdStateMDName);
  963. pViewIdNamedMD->addOperand(MDNode::get(m_Ctx, {ConstantAsMetadata::get(V)}));
  964. }
  965. void DxilMDHelper::LoadDxilViewIdState(DxilViewIdState &ViewIdState) {
  966. NamedMDNode *pViewIdStateNamedMD = m_pModule->getNamedMetadata(kDxilViewIdStateMDName);
  967. if(!pViewIdStateNamedMD)
  968. return;
  969. IFTBOOL(pViewIdStateNamedMD->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  970. MDNode *pNode = pViewIdStateNamedMD->getOperand(0);
  971. IFTBOOL(pNode->getNumOperands() == 1, DXC_E_INCORRECT_DXIL_METADATA);
  972. const MDOperand &MDO = pNode->getOperand(0);
  973. const ConstantAsMetadata *pMetaData = dyn_cast<ConstantAsMetadata>(MDO.get());
  974. IFTBOOL(pMetaData != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  975. if (isa<ConstantAggregateZero>(pMetaData->getValue()))
  976. return;
  977. const ConstantDataArray *pData = dyn_cast<ConstantDataArray>(pMetaData->getValue());
  978. IFTBOOL(pData != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  979. IFTBOOL(pData->getElementType() == Type::getInt32Ty(m_Ctx), DXC_E_INCORRECT_DXIL_METADATA);
  980. IFTBOOL(pData->getRawDataValues().size() < UINT_MAX &&
  981. (pData->getRawDataValues().size() & 3) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  982. ViewIdState.Deserialize((unsigned *)pData->getRawDataValues().begin(),
  983. (unsigned)pData->getRawDataValues().size() / 4);
  984. }
  985. MDNode *DxilMDHelper::EmitControlFlowHints(llvm::LLVMContext &Ctx, std::vector<DXIL::ControlFlowHint> &hints) {
  986. SmallVector<Metadata *, 4> Args;
  987. // Reserve operand 0 for self reference.
  988. auto TempNode = MDNode::getTemporary(Ctx, None);
  989. Args.emplace_back(TempNode.get());
  990. Args.emplace_back(MDString::get(Ctx, kDxilControlFlowHintMDName));
  991. for (DXIL::ControlFlowHint &hint : hints)
  992. Args.emplace_back(Uint32ToConstMD(static_cast<unsigned>(hint), Ctx));
  993. MDNode *hintsNode = MDNode::get(Ctx, Args);
  994. // Set the first operand to itself.
  995. hintsNode->replaceOperandWith(0, hintsNode);
  996. return hintsNode;
  997. }
  998. MDTuple *DxilMDHelper::EmitDxilSampler(const DxilSampler &S) {
  999. Metadata *MDVals[kDxilSamplerNumFields];
  1000. EmitDxilResourceBase(S, &MDVals[0]);
  1001. // Sampler-specific fields.
  1002. MDVals[kDxilSamplerType ] = Uint32ToConstMD((unsigned)S.GetSamplerKind());
  1003. // Name-value list of extended properties.
  1004. MDVals[kDxilSamplerNameValueList] = nullptr;
  1005. vector<Metadata *> MDExtraVals;
  1006. m_ExtraPropertyHelper->EmitSamplerProperties(S, MDExtraVals);
  1007. if (!MDExtraVals.empty()) {
  1008. MDVals[kDxilSamplerNameValueList] = MDNode::get(m_Ctx, MDExtraVals);
  1009. }
  1010. return MDNode::get(m_Ctx, MDVals);
  1011. }
  1012. void DxilMDHelper::LoadDxilSampler(const MDOperand &MDO, DxilSampler &S) {
  1013. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1014. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1015. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1016. IFTBOOL(pTupleMD->getNumOperands() == kDxilSamplerNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  1017. LoadDxilResourceBase(MDO, S);
  1018. // Sampler-specific fields.
  1019. S.SetSamplerKind((DxilSampler::SamplerKind)ConstMDToUint32(pTupleMD->getOperand(kDxilSamplerType)));
  1020. // Name-value list of extended properties.
  1021. m_ExtraPropertyHelper->LoadSamplerProperties(pTupleMD->getOperand(kDxilSamplerNameValueList), S);
  1022. }
  1023. const MDOperand &DxilMDHelper::GetResourceClass(llvm::MDNode *MD,
  1024. DXIL::ResourceClass &RC) {
  1025. IFTBOOL(MD->getNumOperands() >=
  1026. DxilMDHelper::kHLDxilResourceAttributeNumFields,
  1027. DXC_E_INCORRECT_DXIL_METADATA);
  1028. RC = static_cast<DxilResource::Class>(ConstMDToUint32(
  1029. MD->getOperand(DxilMDHelper::kHLDxilResourceAttributeClass)));
  1030. return MD->getOperand(DxilMDHelper::kHLDxilResourceAttributeMeta);
  1031. }
  1032. void DxilMDHelper::LoadDxilResourceBaseFromMDNode(llvm::MDNode *MD,
  1033. DxilResourceBase &R) {
  1034. DxilResource::Class RC = DxilResource::Class::Invalid;
  1035. const MDOperand &Meta = GetResourceClass(MD, RC);
  1036. switch (RC) {
  1037. case DxilResource::Class::CBuffer: {
  1038. DxilCBuffer CB;
  1039. LoadDxilCBuffer(Meta, CB);
  1040. R = CB;
  1041. } break;
  1042. case DxilResource::Class::Sampler: {
  1043. DxilSampler S;
  1044. LoadDxilSampler(Meta, S);
  1045. R = S;
  1046. } break;
  1047. case DxilResource::Class::SRV: {
  1048. DxilResource Res;
  1049. LoadDxilSRV(Meta, Res);
  1050. R = Res;
  1051. } break;
  1052. case DxilResource::Class::UAV: {
  1053. DxilResource Res;
  1054. LoadDxilUAV(Meta, Res);
  1055. R = Res;
  1056. } break;
  1057. default:
  1058. DXASSERT(0, "Invalid metadata");
  1059. }
  1060. }
  1061. void DxilMDHelper::LoadDxilResourceFromMDNode(llvm::MDNode *MD,
  1062. DxilResource &R) {
  1063. DxilResource::Class RC = DxilResource::Class::Invalid;
  1064. const MDOperand &Meta = GetResourceClass(MD, RC);
  1065. switch (RC) {
  1066. case DxilResource::Class::SRV: {
  1067. LoadDxilSRV(Meta, R);
  1068. } break;
  1069. case DxilResource::Class::UAV: {
  1070. LoadDxilUAV(Meta, R);
  1071. } break;
  1072. default:
  1073. DXASSERT(0, "Invalid metadata");
  1074. }
  1075. }
  1076. void DxilMDHelper::LoadDxilSamplerFromMDNode(llvm::MDNode *MD, DxilSampler &S) {
  1077. DxilResource::Class RC = DxilResource::Class::Invalid;
  1078. const MDOperand &Meta = GetResourceClass(MD, RC);
  1079. switch (RC) {
  1080. case DxilResource::Class::Sampler: {
  1081. LoadDxilSampler(Meta, S);
  1082. } break;
  1083. default:
  1084. DXASSERT(0, "Invalid metadata");
  1085. }
  1086. }
  1087. //
  1088. // DxilExtraPropertyHelper shader-specific methods.
  1089. //
  1090. MDTuple *DxilMDHelper::EmitDxilGSState(DXIL::InputPrimitive Primitive,
  1091. unsigned MaxVertexCount,
  1092. unsigned ActiveStreamMask,
  1093. DXIL::PrimitiveTopology StreamPrimitiveTopology,
  1094. unsigned GSInstanceCount) {
  1095. Metadata *MDVals[kDxilGSStateNumFields];
  1096. MDVals[kDxilGSStateInputPrimitive ] = Uint32ToConstMD((unsigned)Primitive);
  1097. MDVals[kDxilGSStateMaxVertexCount ] = Uint32ToConstMD(MaxVertexCount);
  1098. MDVals[kDxilGSStateActiveStreamMask ] = Uint32ToConstMD(ActiveStreamMask);
  1099. MDVals[kDxilGSStateOutputStreamTopology] = Uint32ToConstMD((unsigned)StreamPrimitiveTopology);
  1100. MDVals[kDxilGSStateGSInstanceCount ] = Uint32ToConstMD(GSInstanceCount);
  1101. return MDNode::get(m_Ctx, MDVals);
  1102. }
  1103. void DxilMDHelper::LoadDxilGSState(const MDOperand &MDO,
  1104. DXIL::InputPrimitive &Primitive,
  1105. unsigned &MaxVertexCount,
  1106. unsigned &ActiveStreamMask,
  1107. DXIL::PrimitiveTopology &StreamPrimitiveTopology,
  1108. unsigned &GSInstanceCount) {
  1109. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1110. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1111. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1112. IFTBOOL(pTupleMD->getNumOperands() == kDxilGSStateNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  1113. Primitive = (DXIL::InputPrimitive)ConstMDToUint32(pTupleMD->getOperand(kDxilGSStateInputPrimitive));
  1114. MaxVertexCount = ConstMDToUint32(pTupleMD->getOperand(kDxilGSStateMaxVertexCount));
  1115. ActiveStreamMask = ConstMDToUint32(pTupleMD->getOperand(kDxilGSStateActiveStreamMask));
  1116. StreamPrimitiveTopology = (DXIL::PrimitiveTopology)ConstMDToUint32(pTupleMD->getOperand(kDxilGSStateOutputStreamTopology));
  1117. GSInstanceCount = ConstMDToUint32(pTupleMD->getOperand(kDxilGSStateGSInstanceCount));
  1118. }
  1119. MDTuple *DxilMDHelper::EmitDxilDSState(DXIL::TessellatorDomain Domain, unsigned InputControlPointCount) {
  1120. Metadata *MDVals[kDxilDSStateNumFields];
  1121. MDVals[kDxilDSStateTessellatorDomain ] = Uint32ToConstMD((unsigned)Domain);
  1122. MDVals[kDxilDSStateInputControlPointCount] = Uint32ToConstMD(InputControlPointCount);
  1123. return MDNode::get(m_Ctx, MDVals);
  1124. }
  1125. void DxilMDHelper::LoadDxilDSState(const MDOperand &MDO,
  1126. DXIL::TessellatorDomain &Domain,
  1127. unsigned &InputControlPointCount) {
  1128. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1129. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1130. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1131. IFTBOOL(pTupleMD->getNumOperands() == kDxilDSStateNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  1132. Domain = (DXIL::TessellatorDomain)ConstMDToUint32(pTupleMD->getOperand(kDxilDSStateTessellatorDomain));
  1133. InputControlPointCount = ConstMDToUint32(pTupleMD->getOperand(kDxilDSStateInputControlPointCount));
  1134. }
  1135. MDTuple *DxilMDHelper::EmitDxilHSState(Function *pPatchConstantFunction,
  1136. unsigned InputControlPointCount,
  1137. unsigned OutputControlPointCount,
  1138. DXIL::TessellatorDomain TessDomain,
  1139. DXIL::TessellatorPartitioning TessPartitioning,
  1140. DXIL::TessellatorOutputPrimitive TessOutputPrimitive,
  1141. float MaxTessFactor) {
  1142. Metadata *MDVals[kDxilHSStateNumFields];
  1143. MDVals[kDxilHSStatePatchConstantFunction ] = ValueAsMetadata::get(pPatchConstantFunction);
  1144. MDVals[kDxilHSStateInputControlPointCount ] = Uint32ToConstMD(InputControlPointCount);
  1145. MDVals[kDxilHSStateOutputControlPointCount ] = Uint32ToConstMD(OutputControlPointCount);
  1146. MDVals[kDxilHSStateTessellatorDomain ] = Uint32ToConstMD((unsigned)TessDomain);
  1147. MDVals[kDxilHSStateTessellatorPartitioning ] = Uint32ToConstMD((unsigned)TessPartitioning);
  1148. MDVals[kDxilHSStateTessellatorOutputPrimitive] = Uint32ToConstMD((unsigned)TessOutputPrimitive);
  1149. MDVals[kDxilHSStateMaxTessellationFactor ] = FloatToConstMD(MaxTessFactor);
  1150. return MDNode::get(m_Ctx, MDVals);
  1151. }
  1152. void DxilMDHelper::LoadDxilHSState(const MDOperand &MDO,
  1153. Function *&pPatchConstantFunction,
  1154. unsigned &InputControlPointCount,
  1155. unsigned &OutputControlPointCount,
  1156. DXIL::TessellatorDomain &TessDomain,
  1157. DXIL::TessellatorPartitioning &TessPartitioning,
  1158. DXIL::TessellatorOutputPrimitive &TessOutputPrimitive,
  1159. float &MaxTessFactor) {
  1160. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1161. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1162. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1163. IFTBOOL(pTupleMD->getNumOperands() == kDxilHSStateNumFields, DXC_E_INCORRECT_DXIL_METADATA);
  1164. pPatchConstantFunction = dyn_cast<Function>(ValueMDToValue(pTupleMD->getOperand(kDxilHSStatePatchConstantFunction)));
  1165. InputControlPointCount = ConstMDToUint32(pTupleMD->getOperand(kDxilHSStateInputControlPointCount));
  1166. OutputControlPointCount = ConstMDToUint32(pTupleMD->getOperand(kDxilHSStateOutputControlPointCount));
  1167. TessDomain = (DXIL::TessellatorDomain)ConstMDToUint32(pTupleMD->getOperand(kDxilHSStateTessellatorDomain));
  1168. TessPartitioning = (DXIL::TessellatorPartitioning)ConstMDToUint32(pTupleMD->getOperand(kDxilHSStateTessellatorPartitioning));
  1169. TessOutputPrimitive = (DXIL::TessellatorOutputPrimitive)ConstMDToUint32(pTupleMD->getOperand(kDxilHSStateTessellatorOutputPrimitive));
  1170. MaxTessFactor = ConstMDToFloat(pTupleMD->getOperand(kDxilHSStateMaxTessellationFactor));
  1171. }
  1172. //
  1173. // DxilExtraPropertyHelper methods.
  1174. //
  1175. DxilMDHelper::ExtraPropertyHelper::ExtraPropertyHelper(Module *pModule)
  1176. : m_pModule(pModule)
  1177. , m_Ctx(pModule->getContext()) {
  1178. }
  1179. DxilExtraPropertyHelper::DxilExtraPropertyHelper(Module *pModule)
  1180. : ExtraPropertyHelper(pModule) {
  1181. }
  1182. void DxilExtraPropertyHelper::EmitSRVProperties(const DxilResource &SRV, std::vector<Metadata *> &MDVals) {
  1183. // Element type for typed resource.
  1184. if (!SRV.IsStructuredBuffer() && !SRV.IsRawBuffer()) {
  1185. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilTypedBufferElementTypeTag, m_Ctx));
  1186. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD((unsigned)SRV.GetCompType().GetKind(), m_Ctx));
  1187. }
  1188. // Element stride for structured buffer.
  1189. if (SRV.IsStructuredBuffer()) {
  1190. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilStructuredBufferElementStrideTag, m_Ctx));
  1191. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(SRV.GetElementStride(), m_Ctx));
  1192. }
  1193. }
  1194. void DxilExtraPropertyHelper::LoadSRVProperties(const MDOperand &MDO, DxilResource &SRV) {
  1195. SRV.SetElementStride(SRV.IsRawBuffer() ? 1 : 4);
  1196. SRV.SetCompType(CompType());
  1197. if (MDO.get() == nullptr) {
  1198. return;
  1199. }
  1200. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1201. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1202. IFTBOOL((pTupleMD->getNumOperands() & 0x1) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  1203. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i += 2) {
  1204. unsigned Tag = DxilMDHelper::ConstMDToUint32(pTupleMD->getOperand(i));
  1205. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  1206. switch (Tag) {
  1207. case DxilMDHelper::kDxilTypedBufferElementTypeTag:
  1208. DXASSERT_NOMSG(!SRV.IsStructuredBuffer() && !SRV.IsRawBuffer());
  1209. SRV.SetCompType(CompType(DxilMDHelper::ConstMDToUint32(MDO)));
  1210. break;
  1211. case DxilMDHelper::kDxilStructuredBufferElementStrideTag:
  1212. DXASSERT_NOMSG(SRV.IsStructuredBuffer());
  1213. SRV.SetElementStride(DxilMDHelper::ConstMDToUint32(MDO));
  1214. break;
  1215. default:
  1216. DXASSERT(false, "Unknown resource record tag");
  1217. }
  1218. }
  1219. }
  1220. void DxilExtraPropertyHelper::EmitUAVProperties(const DxilResource &UAV, std::vector<Metadata *> &MDVals) {
  1221. // Element type for typed RW resource.
  1222. if (!UAV.IsStructuredBuffer() && !UAV.IsRawBuffer()) {
  1223. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilTypedBufferElementTypeTag, m_Ctx));
  1224. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD((unsigned)UAV.GetCompType().GetKind(), m_Ctx));
  1225. }
  1226. // Element stride for structured RW buffer.
  1227. if (UAV.IsStructuredBuffer()) {
  1228. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilStructuredBufferElementStrideTag, m_Ctx));
  1229. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(UAV.GetElementStride(), m_Ctx));
  1230. }
  1231. }
  1232. void DxilExtraPropertyHelper::LoadUAVProperties(const MDOperand &MDO, DxilResource &UAV) {
  1233. UAV.SetElementStride(UAV.IsRawBuffer() ? 1 : 4);
  1234. UAV.SetCompType(CompType());
  1235. if (MDO.get() == nullptr) {
  1236. return;
  1237. }
  1238. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1239. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1240. IFTBOOL((pTupleMD->getNumOperands() & 0x1) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  1241. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i += 2) {
  1242. unsigned Tag = DxilMDHelper::ConstMDToUint32(pTupleMD->getOperand(i));
  1243. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  1244. switch (Tag) {
  1245. case DxilMDHelper::kDxilTypedBufferElementTypeTag:
  1246. DXASSERT_NOMSG(!UAV.IsStructuredBuffer() && !UAV.IsRawBuffer());
  1247. UAV.SetCompType(CompType(DxilMDHelper::ConstMDToUint32(MDO)));
  1248. break;
  1249. case DxilMDHelper::kDxilStructuredBufferElementStrideTag:
  1250. DXASSERT_NOMSG(UAV.IsStructuredBuffer());
  1251. UAV.SetElementStride(DxilMDHelper::ConstMDToUint32(MDO));
  1252. break;
  1253. default:
  1254. DXASSERT(false, "Unknown resource record tag");
  1255. }
  1256. }
  1257. }
  1258. void DxilExtraPropertyHelper::EmitCBufferProperties(const DxilCBuffer &CB, vector<Metadata *> &MDVals) {
  1259. // Emit property to preserve tbuffer kind
  1260. if (CB.GetKind() == DXIL::ResourceKind::TBuffer) {
  1261. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kHLCBufferIsTBufferTag, m_Ctx));
  1262. MDVals.emplace_back(DxilMDHelper::BoolToConstMD(true, m_Ctx));
  1263. }
  1264. }
  1265. void DxilExtraPropertyHelper::LoadCBufferProperties(const MDOperand &MDO, DxilCBuffer &CB) {
  1266. if (MDO.get() == nullptr)
  1267. return;
  1268. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1269. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1270. IFTBOOL((pTupleMD->getNumOperands() & 0x1) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  1271. // Override kind for tbuffer that has not yet been converted to SRV.
  1272. CB.SetKind(DXIL::ResourceKind::CBuffer);
  1273. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i += 2) {
  1274. unsigned Tag = DxilMDHelper::ConstMDToUint32(pTupleMD->getOperand(i));
  1275. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  1276. switch (Tag) {
  1277. case DxilMDHelper::kHLCBufferIsTBufferTag:
  1278. if (DxilMDHelper::ConstMDToBool(MDO)) {
  1279. CB.SetKind(DXIL::ResourceKind::TBuffer);
  1280. }
  1281. break;
  1282. default:
  1283. DXASSERT(false, "Unknown cbuffer tag");
  1284. }
  1285. }
  1286. }
  1287. void DxilExtraPropertyHelper::EmitSamplerProperties(const DxilSampler &S, std::vector<Metadata *> &MDVals) {
  1288. // Nothing yet.
  1289. }
  1290. void DxilExtraPropertyHelper::LoadSamplerProperties(const MDOperand &MDO, DxilSampler &S) {
  1291. // Nothing yet.
  1292. }
  1293. void DxilExtraPropertyHelper::EmitSignatureElementProperties(const DxilSignatureElement &SE,
  1294. vector<Metadata *> &MDVals) {
  1295. // Output stream, if non-zero.
  1296. if (SE.GetOutputStream() != 0) {
  1297. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilSignatureElementOutputStreamTag, m_Ctx));
  1298. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(SE.GetOutputStream(), m_Ctx));
  1299. }
  1300. // Mask of Dynamically indexed components.
  1301. if (SE.GetDynIdxCompMask() != 0) {
  1302. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(DxilMDHelper::kDxilSignatureElementDynIdxCompMaskTag, m_Ctx));
  1303. MDVals.emplace_back(DxilMDHelper::Uint32ToConstMD(SE.GetDynIdxCompMask(), m_Ctx));
  1304. }
  1305. }
  1306. void DxilExtraPropertyHelper::LoadSignatureElementProperties(const MDOperand &MDO, DxilSignatureElement &SE) {
  1307. if (MDO.get() == nullptr)
  1308. return;
  1309. const MDTuple *pTupleMD = dyn_cast<MDTuple>(MDO.get());
  1310. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1311. IFTBOOL((pTupleMD->getNumOperands() & 0x1) == 0, DXC_E_INCORRECT_DXIL_METADATA);
  1312. // Stream.
  1313. for (unsigned i = 0; i < pTupleMD->getNumOperands(); i += 2) {
  1314. unsigned Tag = DxilMDHelper::ConstMDToUint32(pTupleMD->getOperand(i));
  1315. const MDOperand &MDO = pTupleMD->getOperand(i + 1);
  1316. switch (Tag) {
  1317. case DxilMDHelper::kDxilSignatureElementOutputStreamTag:
  1318. SE.SetOutputStream(DxilMDHelper::ConstMDToUint32(MDO));
  1319. break;
  1320. case DxilMDHelper::kHLSignatureElementGlobalSymbolTag:
  1321. break;
  1322. case DxilMDHelper::kDxilSignatureElementDynIdxCompMaskTag:
  1323. SE.SetDynIdxCompMask(DxilMDHelper::ConstMDToUint32(MDO));
  1324. break;
  1325. default:
  1326. DXASSERT(false, "Unknown signature element tag");
  1327. }
  1328. }
  1329. }
  1330. //
  1331. // Utilities.
  1332. //
  1333. bool DxilMDHelper::IsKnownNamedMetaData(llvm::NamedMDNode &Node) {
  1334. StringRef name = Node.getName();
  1335. for (unsigned i = 0; i < DxilMDNames.size(); i++) {
  1336. if (name == DxilMDNames[i]) {
  1337. return true;
  1338. }
  1339. }
  1340. return false;
  1341. }
  1342. ConstantAsMetadata *DxilMDHelper::Int32ToConstMD(int32_t v, LLVMContext &Ctx) {
  1343. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(Ctx, 32), APInt(32, v)));
  1344. }
  1345. ConstantAsMetadata *DxilMDHelper::Int32ToConstMD(int32_t v) {
  1346. return DxilMDHelper::Int32ToConstMD(v, m_Ctx);
  1347. }
  1348. ConstantAsMetadata *DxilMDHelper::Uint32ToConstMD(unsigned v, LLVMContext &Ctx) {
  1349. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(Ctx, 32), APInt(32, v)));
  1350. }
  1351. ConstantAsMetadata *DxilMDHelper::Uint32ToConstMD(unsigned v) {
  1352. return DxilMDHelper::Uint32ToConstMD(v, m_Ctx);
  1353. }
  1354. ConstantAsMetadata *DxilMDHelper::Uint64ToConstMD(uint64_t v, LLVMContext &Ctx) {
  1355. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(Ctx, 64), APInt(64, v)));
  1356. }
  1357. ConstantAsMetadata *DxilMDHelper::Uint64ToConstMD(uint64_t v) {
  1358. return DxilMDHelper::Uint64ToConstMD(v, m_Ctx);
  1359. }
  1360. ConstantAsMetadata *DxilMDHelper::Int8ToConstMD(int8_t v) {
  1361. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(m_Ctx, 8), APInt(8, v)));
  1362. }
  1363. ConstantAsMetadata *DxilMDHelper::Uint8ToConstMD(uint8_t v) {
  1364. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(m_Ctx, 8), APInt(8, v)));
  1365. }
  1366. ConstantAsMetadata *DxilMDHelper::BoolToConstMD(bool v, LLVMContext &Ctx) {
  1367. return ConstantAsMetadata::get(Constant::getIntegerValue(IntegerType::get(Ctx, 1), APInt(1, v ? 1 : 0)));
  1368. }
  1369. ConstantAsMetadata *DxilMDHelper::BoolToConstMD(bool v) {
  1370. return DxilMDHelper::BoolToConstMD(v, m_Ctx);
  1371. }
  1372. ConstantAsMetadata *DxilMDHelper::FloatToConstMD(float v) {
  1373. return ConstantAsMetadata::get(ConstantFP::get(m_Ctx, APFloat(v)));
  1374. }
  1375. int32_t DxilMDHelper::ConstMDToInt32(const MDOperand &MDO) {
  1376. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1377. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1378. return (int32_t)pConst->getZExtValue();
  1379. }
  1380. unsigned DxilMDHelper::ConstMDToUint32(const MDOperand &MDO) {
  1381. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1382. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1383. return (unsigned)pConst->getZExtValue();
  1384. }
  1385. uint64_t DxilMDHelper::ConstMDToUint64(const MDOperand &MDO) {
  1386. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1387. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1388. return pConst->getZExtValue();
  1389. }
  1390. int8_t DxilMDHelper::ConstMDToInt8(const MDOperand &MDO) {
  1391. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1392. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1393. return (int8_t)pConst->getZExtValue();
  1394. }
  1395. uint8_t DxilMDHelper::ConstMDToUint8(const MDOperand &MDO) {
  1396. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1397. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1398. return (uint8_t)pConst->getZExtValue();
  1399. }
  1400. bool DxilMDHelper::ConstMDToBool(const MDOperand &MDO) {
  1401. ConstantInt *pConst = mdconst::extract<ConstantInt>(MDO);
  1402. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1403. return pConst->getZExtValue() != 0;
  1404. }
  1405. float DxilMDHelper::ConstMDToFloat(const MDOperand &MDO) {
  1406. ConstantFP *pConst = mdconst::extract<ConstantFP>(MDO);
  1407. IFTBOOL(pConst != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1408. return pConst->getValueAPF().convertToFloat();
  1409. }
  1410. string DxilMDHelper::StringMDToString(const MDOperand &MDO) {
  1411. MDString *pMDString = dyn_cast<MDString>(MDO.get());
  1412. IFTBOOL(pMDString != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1413. return pMDString->getString();
  1414. }
  1415. Value *DxilMDHelper::ValueMDToValue(const MDOperand &MDO) {
  1416. IFTBOOL(MDO.get() != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1417. ValueAsMetadata *pValAsMD = dyn_cast<ValueAsMetadata>(MDO.get());
  1418. IFTBOOL(pValAsMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1419. Value *pValue = pValAsMD->getValue();
  1420. IFTBOOL(pValue != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1421. return pValue;
  1422. }
  1423. MDTuple *DxilMDHelper::Uint32VectorToConstMDTuple(const std::vector<unsigned> &Vec) {
  1424. vector<Metadata *> MDVals;
  1425. MDVals.resize(Vec.size());
  1426. for (size_t i = 0; i < Vec.size(); i++) {
  1427. MDVals[i] = Uint32ToConstMD(Vec[i]);
  1428. }
  1429. return MDNode::get(m_Ctx, MDVals);
  1430. }
  1431. void DxilMDHelper::ConstMDTupleToUint32Vector(MDTuple *pTupleMD, std::vector<unsigned> &Vec) {
  1432. IFTBOOL(pTupleMD != nullptr, DXC_E_INCORRECT_DXIL_METADATA);
  1433. Vec.resize(pTupleMD->getNumOperands());
  1434. for (size_t i = 0; i < pTupleMD->getNumOperands(); i++) {
  1435. Vec[i] = ConstMDToUint32(pTupleMD->getOperand(i));
  1436. }
  1437. }
  1438. bool DxilMDHelper::IsMarkedPrecise(const Instruction *inst) {
  1439. int32_t val = 0;
  1440. if (MDNode *precise = inst->getMetadata(kDxilPreciseAttributeMDName)) {
  1441. assert(precise->getNumOperands() == 1);
  1442. val = ConstMDToInt32(precise->getOperand(0));
  1443. }
  1444. return val;
  1445. }
  1446. void DxilMDHelper::MarkPrecise(Instruction *I) {
  1447. LLVMContext &Ctx = I->getContext();
  1448. MDNode *preciseNode = MDNode::get(
  1449. Ctx,
  1450. { ConstantAsMetadata::get(ConstantInt::get(Type::getInt32Ty(Ctx), 1)) });
  1451. I->setMetadata(DxilMDHelper::kDxilPreciseAttributeMDName, preciseNode);
  1452. }
  1453. } // namespace hlsl